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Coseismic and postseismic deformation estimation of the 2011 Tohoku earthquake in Kanto Region, Japan, using InSAR time series analysis and GPS

机译:2011年日本Kanto Region 2011年东北地震的电影发后变形估计,使用Insar时间序列分析和GPS

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摘要

We propose a methodology using interferometric synthetic aperture radar (InSAR) time series analysis and a single GPS station to estimate the coseismic and postseismic crustal deformations in the Kanto region, Japan, which has been affected by the 2011 Tohoku earthquake. The proposed methodology depends on choosing a proper deformation trend(s) to accurately describe the earthquake deformation signature by studying the deformation time series of a single GPS station. The modeled deformation trend is subtracted from the unwrapped phase maps to separate the main deformation signature from the imposed errors. Some deformation components, not described by the model(s), will leak to the residual phase maps which will be subjected to temporal and spatial filtering. The final corrected unwrapped phase maps are estimated by restoring the modeled deformation trend to the filtered residual phase maps and finally the deformation time series is estimated using a least squares technique. The proposed methodology was designed to retrieve complex and fine surface deformations in areas that have been affected by large dominating deformation signatures and contain at a least single GPS station. The methodology was tested using Envisat-ASAR C-band images and validation was carried out using GPS stations resulting in a mean RMS error of 6.9 mm. The estimated deformation time series shows a differential postseismic deformation pattern that can be attributed to an off Boso peninsula motion triggered by the 2011 Tohoku earthquake.
机译:我们提出了一种使用干涉式合成孔径雷达(INSAR)时间序列分析和单个GPS站的方法,以估算日本KANTO地区的电影发射地壳变形,该地区受到2011年东北地震的影响。所提出的方法取决于选择适当的变形趋势,以通过研究单个GPS站的变形时间序列来精确描述地震变形签名。从未包装的相位映射中减去建模的变形趋势,以将主变形签名与施加的误差分开。模型未描述的一些变形组件,将泄漏到将受到时间和空间滤波的残余相位图。通过将建模的变形趋势恢复到滤波的残余相位映射来估计最终校正的未写字相位图,并且最后使用最小二乘技术估计变形时间序列。所提出的方法旨在在受大型主导变形签名的区域影响并包含在最小单个GPS站的区域中的复杂和细表面变形。使用Envisat-ASAR C波段测试方法,使用GPS站进行验证,导致6.9mm的平均rms误差。估计的变形时间序列显示了差动后变形图案,其可归因于2011年Tohoku地震触发的偏离波莎半岛运动。

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